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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Docking studies of benzylidene anabaseine interactions with alpha7 nicotinic acetylcholine receptor (nAChR) and acetylcholine binding proteins (AChBPs): application to the design of related alpha7 selective ligands.
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Docking studies of benzylidene anabaseine interactions with alpha7 nicotinic acetylcholine receptor (nAChR) and acetylcholine binding proteins (AChBPs): application to the design of related alpha7 selective ligands.

机译:亚苄基天麻碱与α7烟碱乙酰胆碱受体(nAChR)和乙酰胆碱结合蛋白(AChBPs)的对接研究:在设计相关α7选择性配体中的应用。

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摘要

AChBPs isolated from Lymnaea stagnalis (Ls), Aplysia californica (Ac) and Bulinus truncatus (Bt) have been extensively used as structural prototypes to understand the molecular mechanisms that underlie ligand-interactions with nAChRs [1]. Here, we describe docking studies on interactions of benzylidene anabaseine analogs with AChBPs and alpha7 nAChR. Results reveal that docking of these compounds using Glide software accurately reproduces experimentally-observed binding modes of DMXBA and of its active metabolite, in the binding pocket of Ac. In addition to the well-known nicotinic pharmacophore (positive charge, hydrogen-bond acceptor, and hydrophobic aromatic groups), a hydrogen-bond donor feature contributes to binding of these compounds to Ac, Bt, and the alpha7 nAChR. This is consistent with benzylidene anabaseine analogs with OH and NH(2) functional groups showing the highest binding affinity of these congeners, and the position of the ligand shown in previous X-ray crystallographic studies of ligand-Ac complexes. In the predicted ligand-Ls complex, by contrast, the ligand OH group acts as hydrogen-bond acceptor. We have applied our structural findings to optimizing the design of novel spirodiazepine and spiroimidazoline quinuclidine series. Binding and functional studies revealed that these hydrogen-bond donor containing compounds exhibit improved affinity and selectivity for the alpha7 nAChR subtype and demonstrate partial agonism. The gain in affinity is also due to conformational restriction, tighter hydrophobic enclosures, and stronger cation-pi interactions. The use of AChBPs structure as a surrogate to predict binding affinity to alpha7 nAChR has also been investigated. On the whole, we found that molecular docking into Ls binding site generally scores better than when a alpha7 homology model, Bt or Ac crystal structure is used.
机译:分离自阴唇,百日夜蛾(Aplysia californica)和Ac藜(Bulinus truncatus)(Bt)的AChBP已广泛用作结构原型,以了解与nAChRs配体相互作用的分子机制[1]。在这里,我们描述了对亚苄基天麻碱类似物与AChBPs和alpha7 nAChR相互作用的对接研究。结果表明,使用Glide软件将这些化合物对接可在Ac的结合口袋中准确再现DMXBA及其活性代谢物的实验观察到的结合模式。除了众所周知的烟碱药效基团(正电荷,氢键受体和疏水性芳香族基团)外,氢键供体特征还有助于这些化合物与Ac,Bt和alpha7 nAChR结合。这与具有OH和NH(2)官能团的亚苄基天麻碱类似物相一致,这些官能团显示出这些同类物的最高结合亲和力,并且在以前的X射线晶体学研究中显示出配体的位置。相反,在预测的配体-Ls络合物中,配体OH基团充当氢键受体。我们已将我们的结构发现应用于优化新型螺二氮杂和螺并咪唑啉喹啉环系列的设计。结合和功能研究表明,这些含氢键供体的化合物对alpha7 nAChR亚型表现出改善的亲和力和选择性,并表现出部分激动作用。亲和力的提高还归因于构象限制,更紧密的疏水外壳和更强的阳离子-pi相互作用。还研究了使用AChBPs结构作为替代物来预测与alpha7 nAChR的结合亲和力。总体而言,我们发现分子对接至Ls结合位点的得分通常高于使用alpha7同源模型,Bt或Ac晶体结构时的得分。

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